Lawinenlagebericht

Tetons

Bridger-Teton Avalanche Center
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Lawinengefahr

Sat
Hochgebirge
2 · Mässig
Waldgrenze
2 · Mässig
Unterhalb
1 · Gering
Veraltet — dieser Lagebericht ist 4 years ago abgelaufen. Du siehst vergangene Verhältnisse, nicht den aktuellen Bericht.

Kernpunkte

Human triggered avalanches are possible at the middle and upper elevations, especially where recent snow and wind have combined to form cohesive slabs of snow. Steep and rocky areas that have been wind affected on north through east through south aspects are the most likely areas to trigger a slab. Monitor the sun's influence as well as the increasing temperatures today, and pay attention to signs of instability such as cracking within settled and drifted snow. 

Lawinenprobleme

  • Wind Slabs

    • Hochgebirge
    • Waldgrenze
    • Unterhalb der Waldgrenze
    Wahrscheinlichkeit
    Possible
    Größe
    1–2

    Wind slabs/storm slabs (both soft and hard) are possible at the upper and middle elevations today, with depths from 1 to 2 feet.

    Up to 15 inches of snow has fallen at the upper elevations in the Tetons over the last 3 days. Monitor the wind direction and look for blowing and drifting snow.

    The new snow from January 11/12 has settled into uniform slabs with the increasing temperatures and lies on top of crusts and smooth interfaces at the middle elevations where it has not been overly affected by the wind. Storm instabilities tend to taper quickly after snowfall ceases but moniter conditions with the warming temperatures today.

     

    (1/12/2023)

Avalanche Discussion

Weather Synopsis

Currently western Wyoming is sitting under a ridge of high pressure with some moisture aloft. This will bring warm temperatures with high clouds, causing a greenhouse effect. 

A deep trough that eventually closed off north of the Texas Panhandle dropped 12-15 inches of snow with over an inch of SWE in the Tetons and the Greys zones on January 11/12. Togwotee received closer to 6-8 inches of snow with this system. 

Prior to that WSW flow with imbedded Pacific moisture impacted the forecast area with 3-7 inches of snow and breezy conditions on January 9/10.

Recent Avalanches

Avalanches (both human triggered and natural) were observed yesterday (January 12) in the Tetons

  • SE Face Nez Perce- 20230112, HS-N-D2.5-0, ESE aspect @ 11000' (probably released sometime during the storm on Jan 11)
  • Granite Canyon, A chute- 20230112, SS-ASu-D2-I, N aspect @ 9000' 
  • Avalanche Canyon, lower Nugget- 20230112, SS-N-D2-I, S aspect @ 9500' (probably released sometime during the storm on Jan 11)  

A notable natural avalanche cycle followed on the heels of tropical moisture in a SW-W flow that hit the Tetons from December 27- January 1. Human triggered avalanches have been reported more recently and have involved more recent snow and sensitive wind slabs.

  • Eddington Canyon, Y chutes-20230102, SS-N-D2.5-O, W aspect @ 9200'
  • Martini Chutes- 20230102, HS-N-R2-D3-O, SE aspect @ 10400'
  • Horseshoe Bowl- 20230102, SS-N-R1-D2-I, SE aspect @ 9200'
  • Ullr 2- 20230102, HS-N-R2-D2-O, SE aspect @ 9500'

Snowpack Summary

Current snow surfaces are composed of medium to high density snow that has settled from the January 11/12 storm. In wind affected areas the surface of the snow has turned into upside down wind slabs. 

Snow depths are approaching 2 meters at upper elevations in the Tetons in areas that have not been wind scoured. The top half of the snow pack is composed of new, decomposing, and wind packed snow. The bottom half of the snowpack contains various faceted layers of snow that formed in early December, mid-late November, and October.

The November 27th layer is probably dormant at this time but might resurface with a solid loading event on S to SE aspects above 8500 ft (see Martini Chutes avalanche and SE Face Nez Perce). Members of the public and forecasters have seen reactivity on southerly aspects above 8500 feet on this layer in snowpits recently. In areas where the snowpack is less than 1.5 meters deep, extended column tests have been giving propagating results on chained facets below the melt/freeze crust. Snow depths are still extremely variable on S aspects at this time, especially in windward avalanche terrain where both wind scouring and sloughing have conspired to thin start zones and thicken mid slopes (with western edges tending to be thicker due to cross loading). The weak layer seems to be continuous while slab depths are quite variable. Shear planes are somewhat smooth but not necessarily planar. 

The low elevations have new snow on top of a rain crust that capped the snowpack on December 27. 

 

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